Theoretical analysis and experimental design of dual-beam optical trap for large particles

dc.contributor.advisorChairperson, Graduate Committee: Wm. Randall Babbitten
dc.contributor.authorSt. John, Demi Roseen
dc.date.accessioned2019-03-14T13:55:39Z
dc.date.available2019-03-14T13:55:39Z
dc.date.issued2018en
dc.description.abstractUltra-high sensitivity acceleration and gryometric sensors have been proposed as optically levitated particles in ultra-high vacuum (UHV). Larger particles (10- 30 microns in diameter) provide higher sensitivity, but they are difficult to trap in UHV without particle loss. To overcome the radiometric forces that lead to particle loss, rare earth (RE) ion dopants can be incorporated into the particles to enable solid-state laser cooling of the particles internal temperature. This thesis theoretically and experimentally explores development of optical traps designed for trapping and internally laser cooling large particles. The analysis focuses on dual-beam horizontal traps and the development of code to analyze dual-beam trap potentials and particle loading dynamics. Tolerance analysis, improved particle loader designs, and monitoring and automation of the loading process are investigated. The thesis provides a road map for achieving efficient optical trapping, cooling, and control of large particles.en
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/15105en
dc.language.isoenen
dc.publisherMontana State University - Bozeman, College of Letters & Scienceen
dc.rights.holderCopyright 2018 by Demi Rose St. Johnen
dc.subject.lcshOptoelectronicsen
dc.subject.lcshVacuum technologyen
dc.subject.lcshParticles (Nuclear physics)en
dc.subject.lcshCoolingen
dc.titleTheoretical analysis and experimental design of dual-beam optical trap for large particlesen
dc.typeThesisen
mus.data.thumbpage70en
thesis.degree.committeemembersMembers, Graduate Committee: Brian D'Urso; Charles Thiel.en
thesis.degree.departmentPhysics.en
thesis.degree.genreThesisen
thesis.degree.nameMSen
thesis.format.extentfirstpage1en
thesis.format.extentlastpage153en

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